Wu L, Zhang J, Qin M, Liu F, Wang W
National Laboratory of Solid State Microstructure and Department of Physics, Nanjing University, Nanjing 210093, China.
J Chem Phys. 2008 Jun 21;128(23):235103. doi: 10.1063/1.2943202.
The Go-like potential at a residual level has been successfully applied to the folding of proteins in many previous works. However, taking into consideration more detailed structural information in the atomic level, the definition of contacts used in these traditional Go-models may not be suitable for all-atom simulations. Here, in this work, we develop a rational definition of contacts considering the screening effect in the crowded intramolecular environment. In such a scheme, a large amount of screened atom pairs are excluded and the number of contacts is decreased compared to the case of the traditional definition. These contacts defined by such a new definition are compatible with the all-atom representation of protein structures. To verify the rationality of the new definition of contacts, the folding of proteins CI2 and SH3 is simulated by all-atom molecular dynamics simulations. A high folding cooperativity and good correlation of the simulated Phi-values with those obtained experimentally, especially for CI2, are found. This suggests that the all-atom Go-model is improved compared to the traditional Go-model. Based on the comparison of the Phi-values, the roles of side chains in the folding are discussed, and it is concluded that the side-chain structures are more important for local contacts in determining the transition state structures. Moreover, the relations between side chain and backbone orderings are also discussed.
在许多先前的工作中,残基水平的类围棋势已成功应用于蛋白质折叠。然而,考虑到原子水平上更详细的结构信息,这些传统围棋模型中使用的接触定义可能不适用于全原子模拟。在此工作中,我们考虑拥挤分子内环境中的屏蔽效应,开发了一种合理的接触定义。在这样的方案中,大量被屏蔽的原子对被排除,与传统定义的情况相比,接触数量减少。由这种新定义定义的这些接触与蛋白质结构的全原子表示兼容。为了验证新接触定义的合理性,通过全原子分子动力学模拟对蛋白质CI2和SH3的折叠进行了模拟。发现具有高折叠协同性,并且模拟的Phi值与实验获得的值具有良好的相关性,尤其是对于CI2。这表明与传统围棋模型相比,全原子围棋模型得到了改进。基于Phi值的比较,讨论了侧链在折叠中的作用,并得出结论,侧链结构对于确定过渡态结构的局部接触更为重要。此外,还讨论了侧链与主链排序之间的关系。